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Activity-associated miRNA are packaged in Map1b-enriched exosomes released from depolarized neurons

机译:与活性相关的miRNA包装在从去极化神经元释放的富含Map1b的外泌体中

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Rapid input-restricted change in gene expression is an important aspect of synaptic plasticity requiring complex mechanisms of post-transcriptional mRNA trafficking and regulation. Small non-coding miRNA are uniquely poised to support these functions by providing a nucleic-acid-based specificity component for universal-sequence-dependent RNA binding complexes. We investigated the subcellular distribution of these molecules in resting and potassium chloride depolarized human neuroblasts, and found both selective enrichment and depletion in neurites. Depolarization was associated with a neurite-restricted decrease in miRNA expression; a subset of these molecules was recovered from the depolarization medium in nuclease resistant extracellular exosomes. These vesicles were enriched with primate specific miRNA and the synaptic-plasticity-associated protein MAP1b. These findings further support a role for miRNA as neural plasticity regulators, as they are compartmentalized in neurons and undergo activity-associated redistribution or release into the extracellular matrix.
机译:快速输入限制的基因表达变化是突触可塑性的重要方面,需要转录后mRNA转运和调控的复杂机制。小型非编码miRNA通过为通用序列依赖性RNA结合复合物提供基于核酸的特异性成分而独特地支持这些功能。我们研究了这些分子在静息和氯化钾去极化的人类神经母细胞中的亚细胞分布,并发现了神经突中的选择性富集和耗竭。去极化与miRNA表达受限的神经突减少有关。从抗极化酶的细胞外囊泡中的去极化介质中回收了这些分子的一个子集。这些囊泡富含灵长类特异的miRNA和突触可塑性相关蛋白MAP1b。这些发现进一步支持miRNA作为神经可塑性调节剂的作用,因为它们在神经元内被分隔并经历与活性相关的重新分布或释放到细胞外基质中。

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